Dermatology and Charles C. Gates Center for Regenerative Medicine and Stem Cell Biology, University of Colorado at Denver, Aurora, Colorado 80045, USA.
J Invest Dermatol. 2011 Feb;131(2):302-10. doi: 10.1038/jid.2010.306. Epub 2010 Oct 21.
Planar cell polarity (PCP) signaling is essential in determining the polarity of cells within the plane of an epithelial sheet. Core PCP genes have been recently shown to control the global polarization of hair follicles in mice. Fuz, a homologue of the Drosophila PCP effector gene, fuzzy, is critical in ciliogenesis in vertebrates, and is required for the development of a wide range of organs in mice. Here, we report that disruption of the Fuz gene in mice severely blocked the development of hair follicles in the skin. In contrast to the loss of hair follicle polarization in mice deficient in core PCP genes, hair follicles in mice lacking the Fuz gene retained their typical anterior-posterior orientation. We show that disruption of Fuz impaired the formation of primary cilia and the hedgehog signaling pathway in the skin. In addition, using skin grafts and skin reconstitution assays we demonstrate that the expression of Fuz is required in both epidermal and dermal cells and that the formation of primary cilia is a cell-autonomous process that does not require cross talk between the epithelia and mesenchymal compartments during hair follicle formation.
平面细胞极性 (PCP) 信号对于确定上皮片中细胞的极性至关重要。最近发现核心 PCP 基因控制着毛囊在小鼠中的整体极化。Fuz 是果蝇 PCP 效应基因 fuzzy 的同源物,在脊椎动物的纤毛发生中至关重要,并且是小鼠中多种器官发育所必需的。在这里,我们报告说,破坏小鼠中的 Fuz 基因严重阻止了皮肤中毛囊的发育。与核心 PCP 基因缺失小鼠中毛囊极化的丧失相反,缺乏 Fuz 基因的毛囊保留了其典型的前后取向。我们表明,破坏 Fuz 会损害皮肤中的初级纤毛形成和 hedgehog 信号通路。此外,我们通过皮肤移植物和皮肤重建实验证明,Fuz 的表达在表皮和真皮细胞中都是必需的,并且初级纤毛的形成是一个细胞自主的过程,在毛囊形成过程中不需要上皮和间充质区室之间的串扰。